Area of research
Plant Science · Agronomy and Crop Science
Research interest
Research interests include Wheat and Barley Genetics and Pathology, Plant Molecular Biology Research, Bioenergy crop production and management, and Plant nutrient uptake and metabolism.
<i>GIGANTEA</i> accelerates wheat heading time through gene interactions converging on <i>FLOWERING LOCUS T1</i>
LEAFY and WAPO1 jointly regulate spikelet number per spike and floret development in wheat
EARLY FLOWERING 3 interactions with PHYTOCHROME B and PHOTOPERIOD1 are critical for the photoperiodic regulation of wheat heading time
WAPO-A1 is the causal gene of the 7AL QTL for spikelet number per spike in wheat
MiR172-APETALA2-like genes integrate vernalization and plant age to control flowering time in wheat
Interactions between SQUAMOSA and SHORT VEGETATIVE PHASE MADS-box proteins regulate meristem transitions during wheat spike development
Epistatic interactions between PHOTOPERIOD1, CONSTANS1 and CONSTANS2 modulate the photoperiodic response in wheat
Wheat <i>VRN1</i> , <i>FUL2</i> and <i>FUL3</i> play critical and redundant roles in spikelet development and spike determinacy
<i>FLOWERING LOCUS T2</i> regulates spike development and fertility in temperate cereals
Night-Break Experiments Shed Light on the Photoperiod1-Mediated Flowering
Factorial combinations of protein interactions generate a multiplicity of florigen activation complexes in wheat and barley
PHYTOCHROME C plays a major role in the acceleration of wheat flowering under long-day photoperiod
Zm908p11, encoded by a short open reading frame (sORF) gene, functions in pollen tube growth as a profilin ligand in maize